Klotho microinjection into the RVLM attenuates acute kidney injury via interaction with the cholinergic anti-inflammatory pathway in rats

(2025) Klotho microinjection into the RVLM attenuates acute kidney injury via interaction with the cholinergic anti-inflammatory pathway in rats. Research in Pharmaceutical Sciences. pp. 343-355. ISSN 1735-5362

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Abstract

Background and purpose: The Klotho (Klo) gene, an aging suppressor in rats, accelerates aging when disrupted and extends lifespan when overexpressed. It encodes a transmembrane protein primarily expressed in renal tubules. This study investigated the protective effects of central Klo, both alone and in combination with cholinergic anti-inflammatory pathway (CAP) inhibition, against ischemia-reperfusion injury (IRI)induced acute kidney injury. The current study evaluated the expression of inflammatory and anti-inflammatory genes (including Il1b, Tnfa, Tgfb, Trem2, and Il10) in the kidney, alongside plasma levels of creatinine (Cr), blood urea nitrogen (BUN), and signs of acute tubular injury.Experimental approach: Klo was microinjected into the rostral ventrolateral medulla, and CAP inhibition was achieved through intraperitoneal administration of mecamylamine (Mec). Real-time RT-PCR and hematoxylin and eosin staining were used for gene expression analysis and histopathological examination, respectively.Findings/Results: The results showed elevated Cr and BUN levels, tubular injury, and increased inflammatory gene expression in IRI and IRI + Mec groups, as well as reduced Il10 in the IRI + Mec group. Klo exhibited protective effects. Elevated Tgfb expression was seen in IRI + Klo and IRI + Mec + Klo groups one week post-surgery.Conclusion and implications: These findings indicated Klo potential to extend lifespan and protect against age-related diseases, including kidney disease and inflammation, via neural modulation of peripheral immunity.

Item Type: Article
Keywords: Acute kidney injury Cholinergic anti-inflammatory pathway Klotho Mecamylamine Rostral ventrolateral medulla nicotinic acetylcholine-receptor rostral ventrolateral medulla tnf-alpha antiaging protein neuron activity angiotensin-ii activation model Pharmacology & Pharmacy
Page Range: pp. 343-355
Journal or Publication Title: Research in Pharmaceutical Sciences
Journal Index: ISI
Volume: 20
Number: 3
Identification Number: https://doi.org/10.4103/rps.Rps₄₆₂₄
ISSN: 1735-5362
Depositing User: خانم ناهید ضیائی
URI: http://eprints.mui.ac.ir/id/eprint/32868

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